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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Excitation energy transfer between photosystem II and photosystem I in red algae: larger amounts of phycobilisome enhance spillover.
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Excitation energy transfer between photosystem II and photosystem I in red algae: larger amounts of phycobilisome enhance spillover.

机译:红藻中光系统II和光系统I之间的激发能量转移:大量藻胆体会增强溢出。

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摘要

We examined energy transfer dynamics from the photosystem II reaction center (PSII-RC) in intact red algae cells of Porphyridium cruentum, Bangia fuscopurpurea, Porphyra yezoensis, Chondrus giganteus, and Prionitis crispata. Time resolved fluorescence measurements were conducted in the range of 0-80ns at -196 degrees C. The delayed fluorescence spectra were then determined, where the delayed fluorescence was derived from the charge recombination between P680(+) and pheophytin a in PSII-RC. Therefore, the delayed fluorescence spectrum reflected the energy migration processes including PSII-RC. All samples examined showed prominent distribution of delayed fluorescence in PSII and PSI, which suggests that a certain amount of PSII attaches to PSI to share excitation energy in red algae. The energy transfer from PSII to PSI was found to be dominant when the amount of phycoerythrobilin was increased.
机译:我们检查了光系统II反应中心(PSII-RC)在完整的红藻卟啉菌,Bangia fuscopurpurea,紫菜卟啉菌,巨大软骨鱼和栗色棘皮动物中的能量转移动力学。在-196摄氏度下,在0-80ns的范围内进行了时间分辨荧光测量。然后确定了延迟荧光光谱,其中延迟荧光来自PSII-RC中P680(+)和脱镁叶绿素a之间的电荷重组。因此,延迟的荧光光谱反映了包括PSII-RC在内的能量迁移过程。所有检查的样品均显示出PSII和PSI中延迟荧光的显着分布,这表明一定数量的PSII附着在PSI上以在红藻中共享激发能。当藻红蛋白的量增加时,从PSII到PSI的能量转移占主导。

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